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使用喇曼光谱和蓝宝石窗流式细胞仪在 = 21 MPa 下测定 150 至 325°C 时 HO 和 DO 中碳酸的第二离解常数。

Second Dissociation Constant of Carbonic Acid in HO and DO from 150 to 325 °C at = 21 MPa Using Raman Spectroscopy and a Sapphire-Windowed Flow Cell.

机构信息

Department of Chemistry, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

J Phys Chem B. 2020 Apr 2;124(13):2600-2617. doi: 10.1021/acs.jpcb.9b11358. Epub 2020 Mar 20.

DOI:10.1021/acs.jpcb.9b11358
PMID:32195593
Abstract

Solvent-corrected reduced isotropic spectra of carbonate and bicarbonate in light and heavy water have been measured from 150 to 325 °C at 21 MPa using a confocal Raman microscope and a custom-built titanium flow cell with sapphire windows. The positions of the symmetric vibrational modes of CO and HCO/DCO were compared to density functional theory (DFT) calculations with a polarizable continuum model in light and heavy water. The experimental Raman peak positions shifted linearly toward lower wavenumbers with increasing temperatures. Raman scattering coefficients, measured relative to a perchlorate internal standard, were used to determine equilibrium molalities of the carbonate and bicarbonate species. These yielded quantitative thermodynamic equilibrium quotients for the reaction CO + HO ⇌ HCO + OH and its deuterium counterpart. Ionization constants for HCO and DCO, and , calculated in their standard states using the Meissner-Tester activity coefficient model, were combined with critically evaluated literature data to derive expressions for their dependence on temperature and pressure, expressed as solvent molar volume, over the range 25 to 325 °C from to 21 MPa. These are the first experimental values to be reported for this reaction in light water above 250 °C and in heavy water above 25 °C. The value of the deuterium isotope effect on the chemical equilibrium constant, Δp = p - p, decreased from Δp = 0.67 ± 0.07 at 25 °C to Δp = 0.17 ± 0.13 at 325 °C and .

摘要

已在 21 MPa 下使用共焦拉曼显微镜和带有蓝宝石窗的定制钛流动池,从 150 到 325°C 测量了轻水和重水中碳酸盐和碳酸氢盐的溶剂校正各向同性简化光谱。CO 和 HCO/DCO 的对称振动模式的位置与轻水和重水中的极化连续体模型的密度泛函理论(DFT)计算进行了比较。实验拉曼峰位置随温度升高呈线性向低波数移动。相对高氯酸盐内标测量的拉曼散射系数用于确定碳酸盐和碳酸氢盐物种的平衡克分子浓度。这些为 CO + HO ⇌ HCO + OH 及其氘代反应提供了定量热力学平衡商。HCO 和 DCO 的电离常数 和 ,使用 Meissner-Tester 活度系数模型在其标准状态下计算,与经过严格评估的文献数据结合使用,得出了其随温度和压力的表达式,以溶剂摩尔体积表示,范围为 25 到 325°C,压力为 至 21 MPa。这是在轻水(250°C 以上)和重水(25°C 以上)中首次报道的该反应的实验值。氘同位素对化学平衡常数的影响的数值,Δp = p - p,从 25°C 的 Δp = 0.67 ± 0.07 减小到 325°C 的 Δp = 0.17 ± 0.13,以及 。

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